Trigeminal Ganglion

The trigeminal ganglion is a cluster of sensory neuron cell bodies associated with the trigeminal nerve, or cranial nerve V, which carries most somatic sensation from the face and head. Its pseudounipolar neurons receive signals through three peripheral branches and transmit them through a central root to brainstem sensory nuclei, conveying touch, temperature, and pain from regions including the skin, teeth, cornea, and meninges. In neuroscience, the ganglion provides a model for studying sensory processing and pain pathways. Research on its circuitry and signaling supports understanding of trigeminal neuralgia, migraine, headache disorders, and potential targeted therapies.

Trigeminal Ganglion - Related Videos

Research

JoVE Journal - Neuroscience

In-Vivo Calcium Imaging of Sensory Neurons in the Rat Trigeminal Ganglion

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2024

Genetically encoded calcium indicators (GECI) enable a robust, population-level analysis of sensory neuron signaling. Here, we have developed a novel approach that allows for in vivo GECI visualization of rat trigeminal ganglia neuron activity.

In Vivo Calcium Imaging of Neuronal Ensembles in Networks of Primary Sensory Neurons in Intact Trigeminal Ganglia

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2025

This protocol describes in vivo GCaMP calcium imaging of intact trigeminal ganglion (TG) neurons. This description includes TG exposure surgery, in vivo confocal microscopy imaging of TG neurons, application of somatic stimuli during TG neurons microscopic imaging, and analysis of in vivo GCaMP calcium imaging data.

Subcutaneous Trigeminal Nerve Field Stimulation for Refractory Facial Pain

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Cited by 8 •

2017

Treating chronic or neuropathic facial pain can be challenging when medical or standard treatment fails. Subcutaneous nerve field stimulation is the least invasive form of neuromodulation and is used for chronic back pain. We applied this technology to treat chronic and neuropathic trigeminal facial pain.

Analyzing Tooth Germ and Trigeminal Ganglia Interactions Using a Microfluidic Co-culture System

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2025

This video demonstrates the utilization of a microfluidic device to study the interactions between tooth germ pulp and trigeminal ganglia. It showcases the placement of tissues inside the microfluidic device and provides a detailed visualization of trigeminal neurite growth toward the tooth germ through the device's microgrooves. Additionally, it highlights the role of tooth-derived molecular factors in promoting or inhibiting neurite extension into the tooth germ pulp, which is crucial for...

Subcutaneous Trigeminal Nerve Stimulation to Relieve Neuropathic Facial Pain

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2025

Source: Jakobs, M., et al. Subcutaneous Trigeminal Nerve Field Stimulation for Refractory Facial Pain. J. Vis. Exp. (2017)This procedure demonstrates the implantation of subcutaneous electrodes for trigeminal nerve stimulation to treat neuropathic facial pain. The electrodes are tunneled subcutaneously from the affected facial region to an infraclavicular pocket, where they are connected to an internal pulse generator (IPG). The IPG delivers electrical stimulation, activating mechanoreceptor...

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